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The development of scalable, high-fidelity qubits is a key challenge in quantum information science.
M. Grassl, T. Beth, and T. Pellizzari, Codes for the quantum erasure channel, Physical Review A 56
1997
Earlier work this paper cites.
C. H. Bennett, D. P. DiVincenzo, and J. A. Smolin, Capacities of Quantum Erasure Channels, Physical Review Letters 78
1997
Earlier work this paper cites.
2003
Earlier work this paper cites.
N. Khaneja, T. Reiss, C. Kehlet, T. Schulte-Herbrüggen, and S. J. Glaser, Optimal control of coupled spin dynamics: design of NMR pulse sequences by gradient ascent algorithms, Journal of Magnetic Resonance 172
2005
Earlier work this paper cites.
S. D. Barrett and T. M. Stace, Fault Tolerant Quantum Computation with Very High Threshold for Loss Errors, Physical Review Letters 105
2010
Earlier work this paper cites.
F. Henkel, M. Krug, J. Hofmann, W. Rosenfeld, M. Weber, and H. Weinfurter, Highly Efficient State-Selective Submicrosecond Photoionization Detection of Single Atoms, Physical Review Letters 105
2010
Earlier work this paper cites.
A. C. Wilson, C. Ospelkaus, A. P. VanDevender, J. A. Mlynek, K. R. Brown, D. Leibfried, and D. J. Wineland, A 750-mW, continuous-wave, solid-state laser source at 313 nm for cooling and manipulating trapped Be + 9 {}^{9}\textrm{Be}^{+} ions, Applied Physics B 105
2011
Earlier work this paper cites.
P. McQuillen, X. Zhang, T. Strickler, F. B. Dunning, and T. C. Killian, Imaging the evolution of an ultracold strontium Rydberg gas, Physical Review A 87
2013
Earlier work this paper cites.
Y. Colombe, D. H. Slichter, A. C. Wilson, D. Leibfried, and D. J. Wineland, Single-mode optical fiber for high-power, low-loss UV transmission, Optics Express 22
2014
Earlier work this paper cites.
H.-Y. Lo, J. Alonso, D. Kienzler, B. C. Keitch, L. E. de Clercq, V. Negnevitsky, and J. P. Home, All-solid-state continuous-wave laser systems for ionization, cooling and quantum state manipulation of beryllium ions, Applied Physics B 114
2014
Earlier work this paper cites.
M. Endres, H. Bernien, A. Keesling, H. Levine, E. R. Anschuetz, A. Krajenbrink, C. Senko, V. Vuletic, M. Greiner, and M. D. Lukin, Atom-by-atom assembly of defect-free one-dimensional cold atom arrays, Science 354
2016
Earlier work this paper cites.
D. Barredo, S. de Léséleuc, V. Lienhard, T. Lahaye, and A. Browaeys, An atom-by-atom assembler of defect-free arbitrary two-dimensional atomic arrays, Science 354
2016
Earlier work this paper cites.
A. Cooper, J. P. Covey, I. S. Madjarov, S. G. Porsev, M. S. Safronova, and M. Endres, Alkaline-Earth Atoms in Optical Tweezers, Physical Review X 8
2018
Earlier work this paper cites.
M. Norcia, A. Young, and A. Kaufman, Microscopic Control and Detection of Ultracold Strontium in Optical-Tweezer Arrays, Physical Review X 8
2018
Earlier work this paper cites.
A. Bergschneider, V. M. Klinkhamer, J. H. Becher, R. Klemt, G. Zürn, P. M. Preiss, and S. Jochim, Spin-resolved single-atom imaging of Li 6 in free space, Physical Review A 97
2018
Earlier work this paper cites.
S. Dörscher, R. Schwarz, A. Al-Masoudi, S. Falke, U. Sterr, and C. Lisdat, Lattice-induced photon scattering in an optical lattice clock, Physical Review A 97
2018
Earlier work this paper cites.
S. de Léséleuc, D. Barredo, V. Lienhard, A. Browaeys, and T. Lahaye, Analysis of imperfections in the coherent optical excitation of single atoms to rydberg states, Phys. Rev. A 97
2018
Earlier work this paper cites.
S. Saskin, J. T. Wilson, B. Grinkemeyer, and J. D. Thompson, Narrow-Line Cooling and Imaging of Ytterbium Atoms in an Optical Tweezer Array, Physical Review Letters 122
2019
Earlier work this paper cites.
M. A. Norcia, A. W. Young, W. J. Eckner, E. Oelker, J. Ye, and A. M. Kaufman, Seconds-scale coherence on an optical clock transition in a tweezer array, Science 366
2019
Earlier work this paper cites.
I. S. Madjarov, A. Cooper, A. L. Shaw, J. P. Covey, V. Schkolnik, T. H. Yoon, J. R. Williams, and M. Endres, An Atomic-Array Optical Clock with Single-Atom Readout, Physical Review X 9
2019
Cited alongside, same era.
H. Levine, A. Keesling, G. Semeghini, A. Omran, T. T. Wang, S. Ebadi, H. Bernien, M. Greiner, V. Vuletić, H. Pichler, and M. D. Lukin, Parallel Implementation of High-Fidelity Multiqubit Gates with Neutral Atoms, Physical Review Letters 123
2019
Cited alongside, same era.
A. Browaeys and T. Lahaye, Many-body physics with individually controlled Rydberg atoms, Nature Physics 16
2020
Cited alongside, same era.
I. S. Madjarov, J. P. Covey, A. L. Shaw, J. Choi, A. Kale, A. Cooper, H. Pichler, V. Schkolnik, J. R. Williams, and M. Endres, High-fidelity entanglement and detection of alkaline-earth Rydberg atoms, Nature Physics 16
2020
Cited alongside, same era.
N. Chen, L. Li, W. Huie, M. Zhao, I. Vetter, C. H. Greene, and J. P. Covey, Analyzing the Rydberg-based optical-metastable-ground architecture for Yb 171 nuclear spins, Physical Review A 105
2022
Later among the works it cites.
H.-X. Yang, J.-Y. Ma, Y.-K. Wu, Y. Wang, M.-M. Cao, W.-X. Guo, Y.-Y. Huang, L. Feng, Z.-C. Zhou, and L.-M. Duan, Realizing coherently convertible dual-type qubits with the same ion species, Nature Physics 18
2022
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2022
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2022
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2020
Cited alongside, same era.
C. H. Baldwin, B. J. Bjork, J. P. Gaebler, D. Hayes, and D. Stack, Subspace benchmarking high-fidelity entangling operations with trapped ions, Physical Review Research 2
2020
Cited alongside, same era.
S. Ebadi, T. T. Wang, H. Levine, A. Keesling, G. Semeghini, A. Omran, D. Bluvstein, R. Samajdar, H. Pichler, W. W. Ho, S. Choi, S. Sachdev, M. Greiner, V. Vuletić, and M. D. Lukin, Quantum phases of matter on a 256-atom programmable quantum simulator, Nature 595
2021
Cited alongside, same era.
P. Scholl, M. Schuler, H. J. Williams, A. A. Eberharter, D. Barredo, K.-N. Schymik, V. Lienhard, L.-P. Henry, T. C. Lang, T. Lahaye, A. M. Läuchli, and A. Browaeys, Quantum simulation of 2D antiferromagnets with hundreds of Rydberg atoms, Nature 595
2021
Cited alongside, same era.
J. P. Bonilla Ataides, D. K. Tuckett, S. D. Bartlett, S. T. Flammia, and B. J. Brown, The XZZX surface code, Nature Communications 12
2021
Cited alongside, same era.
A. M. Kaufman and K.-K. Ni, Quantum science with optical tweezer arrays of ultracold atoms and molecules, Nature Physics 17
2021
Cited alongside, same era.
D. T. C. Allcock, W. C. Campbell, J. Chiaverini, I. L. Chuang, E. R. Hudson, I. D. Moore, A. Ransford, C. Roman, J. M. Sage, and D. J. Wineland, omg blueprint for trapped ion quantum computing with metastable states, Applied Physics Letters 119
2021
Cited alongside, same era.
C. H. Roman, Expanding the 171
2021
Cited alongside, same era.
2022
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2022
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S. Jandura and G. Pupillo, Time-Optimal Two- and Three-Qubit Gates for Rydberg Atoms, Quantum 6
2022
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J. Wilson, S. Saskin, Y. Meng, S. Ma, R. Dilip, A. Burgers, and J. Thompson, Trapping Alkaline Earth Rydberg Atoms Optical Tweezer Arrays, Physical Review Letters 128
2022
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2022
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2022
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2022
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A. P. Burgers, S. Ma, S. Saskin, J. Wilson, M. A. Alarcón, C. H. Greene, and J. D. Thompson, Controlling Rydberg Excitations Using Ion-Core Transitions in Alkaline-Earth Atom-Tweezer Arrays, PRX Quantum 3
2022
Later among the works it cites.
D. Okuno, Y. Nakamura, T. Kusano, Y. Takasu, N. Takei, H. Konishi, and Y. Takahashi, High-resolution spectroscopy and single-photon rydberg excitation of reconfigurable ytterbium atom tweezer arrays utilizing a metastable state, Journal of the Physical Society of Japan 91
2022
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2023
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2023
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